Arndt S, Emde U, Bäurle S, Friedrich T, Grubert L, Koert U
Institut für Chemie, Humboldt-Universität zu Berlin, Germany.
Chemistry. 2001 Mar 2;7(5):993-1005. doi: 10.1002/1521-3765(20010302)7:5<993::aid-chem993>3.0.co;2-s.
The natural product hybrids quinone-mucocin and quinone- squamocin D were synthesized. In these hybrids, the butenolide unit of the annonaceous acetogenins mucocin and squamocin D is exchanged for the quinone moiety of the natural complex I substrate ubiquinone. For both syntheses, a modular, highly convergent approach was applied. Quinone-mucocin was constructed out of a tetrahydropyran (THP) component 1, a tetrahydrofuran (THF) unit 2, and a quinone precursor 3. A stereoselective, organometallic coupling reaction was chosen for the addition of the THP unit to the rest of the molecule. In the final step, the oxidation to the free quinone was achieved by using cerium(IV) ammonium nitrate (CAN) as the oxidizing agent. Quinone-squamocin D was assembled in a similar manner, from the chiral side chain bromide 16, the central bis-THF core 17, and the quinone precursor 18. Inhibition of complex I (isolated from bovine heart mitochondria) by the quinone acetogenins and several smaller building blocks was examined; quinone mucocin and quinone-squamocin D act as strong inhibitors of complex I. These results and the data from the smaller substructures indicate that other substructures of the acetogenins besides the butenolide group, such as the polyether component and the lipophilic left-hand side chain, are necessary for the strong binding of the acetogenins to complex I.
合成了天然产物杂合体醌 - 番荔枝粘菌素和醌 - 鳞甲素D。在这些杂合体中,番荔枝科产乙酸素粘菌素和鳞甲素D的丁烯内酯单元被天然复合物I底物泛醌的醌部分所取代。对于这两种合成,都采用了模块化、高度汇聚的方法。醌 - 番荔枝粘菌素由四氢吡喃(THP)组分1、四氢呋喃(THF)单元2和醌前体3构建而成。选择了立体选择性有机金属偶联反应将THP单元添加到分子的其余部分。在最后一步中,使用硝酸铈(IV)铵(CAN)作为氧化剂将其氧化为游离醌。醌 - 鳞甲素D以类似的方式由手性侧链溴化物16、中心双THF核心17和醌前体18组装而成。研究了醌产乙酸素和几个较小的结构单元对复合物I(从牛心线粒体中分离)的抑制作用;醌番荔枝粘菌素和醌 - 鳞甲素D是复合物I的强抑制剂。这些结果以及来自较小亚结构的数据表明,除丁烯内酯基团外,产乙酸素的其他亚结构,如聚醚组分和亲脂性左侧链,对于产乙酸素与复合物I的强结合是必要的。